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Real-time velocity measurement to linear motion of a rigid object with monocular image sequence analyses.

, , , , and . J. Real-Time Image Processing, 11 (4): 829-846 (2016)

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An adaptive neural controller and direct adaptive controllers for robot manipulators in the joint space., and . CIRA, page 187-192. IEEE, (2005)Real-time velocity measurement to linear motion of a rigid object with monocular image sequence analyses., , , , and . J. Real-Time Image Processing, 11 (4): 829-846 (2016)A real-time eyebrow segmentation and tracking technique to support an electric wheelchair interface., , and . EUROCON, page 1-6. IEEE, (2015)Neural Control Applied to the Problem of Trajectory Tracking of Mobile Robots with Uncertainties., , , , and . SBRN, page 117-122. IEEE Computer Society, (2008)Practical implementation of an effective robust adaptive fuzzy variable structure tracking control for a wheeled mobile robot., , and . J. Intell. Fuzzy Syst., 35 (1): 1087-1101 (2018)Trajectory Tracking of a Nonholonomic Mobile Robot Considering the Actuator Dynamics: Design of a Neural Dynamic Controller Based on Sliding Mode Theory., , and . ICANN (2), volume 5769 of Lecture Notes in Computer Science, page 845-854. Springer, (2009)Simulation results and practical implementation of a PD-super-twisting second order sliding mode tracking control for a differential wheeled mobile robot., , , , and . Int. J. Comput. Appl. Technol., 63 (3): 213-227 (2020)A proposed adaptive neural controller and direct controllers for robot manipulators., and . CIRA, page 1174-1179. IEEE, (2003)Trajectory tracking performance in task space of robot manipulators: an adaptive neural controller design., , , , and . IROS, page 1241-1246. IEEE, (2005)O Controle Adaptativo de Robôs Manipuladores no Espaco da Tarefa. Universidade Federal de Santa Catarina- UFSC, Florianópolis, SC, Dissertacão de Mestrado em Engenharia Elétrica, (1997)